Jove
Visualize
Contact Us
JoVE
x logofacebook logolinkedin logoyoutube logo
ABOUT JoVE
OverviewLeadershipBlogJoVE Help Center
AUTHORS
Publishing ProcessEditorial BoardScope & PoliciesPeer ReviewFAQSubmit
LIBRARIANS
TestimonialsSubscriptionsAccessResourcesLibrary Advisory BoardFAQ
RESEARCH
JoVE JournalMethods CollectionsJoVE Encyclopedia of ExperimentsArchive
EDUCATION
JoVE CoreJoVE BusinessJoVE Science EducationJoVE Lab ManualFaculty Resource CenterFaculty Site
Terms & Conditions of Use
Privacy Policy
Policies

Filters

Aaron P Turkewitz

Showing results (21-30 of 46) with videos related to

Pageof 5
Sort By:
Traffic (Copenhagen, Denmark)|October 4, 2016
An evolutionary balance: conservation vs innovation in ciliate membrane traffickingSabrice Guerrier, Helmut Plattner, Elisabeth Richardson, et al.
Plos Genetics|November 9, 2005
Elucidation of clathrin-mediated endocytosis in tetrahymena reveals an evolutionarily convergent recruitment of dynaminNels C Elde, Garry Morgan, Mark Winey, et al.
Plos One|December 6, 2017
Extreme metal adapted, knockout and knockdown strains reveal a coordinated gene expression among different Tetrahymena thermophila metallothionein isoformsPatricia de Francisco, Ana Martín-González, Aaron P Turkewitz, et al.
Environmental Microbiology|April 25, 2018
Genome plasticity in response to stress in Tetrahymena thermophila: selective and reversible chromosome amplification and paralogous expansion of metallothionein genesPatricia de Francisco, Ana Martín-González, Aaron P Turkewitz, et al.
G3 (Bethesda, Md.)|June 19, 2016
Whole Genome Sequencing Identifies a Novel Factor Required for Secretory Granule Maturation in Tetrahymena thermophilaCassandra Kontur, Santosh Kumar, Xun Lan, et al.
Molecular Biology of the Cell|April 7, 2017
An endosomal syntaxin and the AP-3 complex are required for formation and maturation of candidate lysosome-related secretory organelles (mucocysts) in <i>Tetrahymena thermophila</i>Harsimran Kaur, Daniela Sparvoli, Hiroko Osakada, et al.
Plos Genetics|October 27, 2010
Comprehensive analysis reveals dynamic and evolutionary plasticity of Rab GTPases and membrane traffic in Tetrahymena thermophilaLydia J Bright, Nichole Kambesis, Scott Brent Nelson, et al.
Traffic (Copenhagen, Denmark)|March 9, 2005
Core formation and the acquisition of fusion competence are linked during secretory granule maturation in TetrahymenaGrant R Bowman, Nels C Elde, Garry Morgan, et al.
Journal of Cell Science|January 23, 2020
Diversification of CORVET tethers facilitates transport complexity in <i>Tetrahymena thermophila</i>Daniela Sparvoli, Martin Zoltner, Chao-Yin Cheng, et al.
Journal of Cell Science|October 30, 2023
Structure and dynamics of the contractile vacuole complex in Tetrahymena thermophilaChao-Yin Cheng, Daniel P Romero, Martin Zoltner, et al.
Pageof 5

Showing results (21-30 of 46) with videos related to

Sort By:
Pageof 5
Traffic (Copenhagen, Denmark)|October 4, 2016
An evolutionary balance: conservation vs innovation in ciliate membrane traffickingSabrice Guerrier, Helmut Plattner, Elisabeth Richardson, et al.
Plos Genetics|November 9, 2005
Elucidation of clathrin-mediated endocytosis in tetrahymena reveals an evolutionarily convergent recruitment of dynaminNels C Elde, Garry Morgan, Mark Winey, et al.
Plos One|December 6, 2017
Extreme metal adapted, knockout and knockdown strains reveal a coordinated gene expression among different Tetrahymena thermophila metallothionein isoformsPatricia de Francisco, Ana Martín-González, Aaron P Turkewitz, et al.
Environmental Microbiology|April 25, 2018
Genome plasticity in response to stress in Tetrahymena thermophila: selective and reversible chromosome amplification and paralogous expansion of metallothionein genesPatricia de Francisco, Ana Martín-González, Aaron P Turkewitz, et al.
G3 (Bethesda, Md.)|June 19, 2016
Whole Genome Sequencing Identifies a Novel Factor Required for Secretory Granule Maturation in Tetrahymena thermophilaCassandra Kontur, Santosh Kumar, Xun Lan, et al.
Molecular Biology of the Cell|April 7, 2017
An endosomal syntaxin and the AP-3 complex are required for formation and maturation of candidate lysosome-related secretory organelles (mucocysts) in <i>Tetrahymena thermophila</i>Harsimran Kaur, Daniela Sparvoli, Hiroko Osakada, et al.
Plos Genetics|October 27, 2010
Comprehensive analysis reveals dynamic and evolutionary plasticity of Rab GTPases and membrane traffic in Tetrahymena thermophilaLydia J Bright, Nichole Kambesis, Scott Brent Nelson, et al.
Traffic (Copenhagen, Denmark)|March 9, 2005
Core formation and the acquisition of fusion competence are linked during secretory granule maturation in TetrahymenaGrant R Bowman, Nels C Elde, Garry Morgan, et al.
Journal of Cell Science|January 23, 2020
Diversification of CORVET tethers facilitates transport complexity in <i>Tetrahymena thermophila</i>Daniela Sparvoli, Martin Zoltner, Chao-Yin Cheng, et al.
Journal of Cell Science|October 30, 2023
Structure and dynamics of the contractile vacuole complex in Tetrahymena thermophilaChao-Yin Cheng, Daniel P Romero, Martin Zoltner, et al.
Pageof 5